Residual intensity modulation in resonator fiber optic gyros with sinusoidal wave phase modulation
Tóm tắt
Từ khóa
Tài liệu tham khảo
Carroll, R., Coccoli, C.D., Cardarelli, D., et al., 1987. The passive resonator fiber optic gyro and comparison to the interferometer fiber gyro. Fiber Optic Gyros: 10th Anniversary Conf. Int. Society for Optics and Photonics, p.169–177.
Chow, W.W., Gea-Banaciloche, J., Pedrotti, L.M., et al., 1985. The ring laser gyro. Rev. Mod. Phys., 57(1):61–103. [doi:10.1103/RevModPhys.57.61]
Hotate, K., Harumoto, M., 1997. Resonator fiber optic gyro using digital serrodyne modulation. J. Lightw. Technol., 15(3):466–473. [doi:10.1109/50.557562]
Hotate, K., Hayashi, G., 1999. Resonator fiber optic gyro using digital serrodyne modulation-method to reduce the noise induced by the backscattering and closed-loop operation using digital signal processing. SPIE, 3746:104–107.
Hu, Z., 2008. Effects of residual intensity modulation of Y-waveguide modulator on interferometric fiber optic gyroscope and elimination method. Chin. J. Lasers, 35(12):1924–1929 (in Chinese). [doi:10.3788/CJL20083512.1924]
Iwatsuki, K., Hotate, K., Higashiguchi, M., 1984. Effect of Rayleigh backscattering in an optical passive ring-resonator gyro. Appl. Opt., 23(21):3916–3924. [doi:10.1364/AO.23.003916]
Iwatsuki, K., Hotate, K., Higashiguchi, M., 1986. Kerr effect in an optical passive ring-resonator gyro. J. Lightw. Technol., 4(6):645–651. [doi:10.109/JLT.1986.1074770]
Jaatinen, E., Hopper, D.J., Back, J., 2009. Residual amplitude modulation mechanisms in modulation transfer spectroscopy that use electro-optic modulators. Meas. Sci. Technol., 20(2):1–8. [doi:10.1088/0957-0233/20/2/025302]
Jin, Z., Zhang, G., Mao, H., et al., 2012. Resonator micro optic gyro with double phase modulation technique using an FPGA-based digital processor. Opt. Commun., 285(5): 645–649. [doi:10.1016/j.opt-com.2011.11.017]
Lefevre, H., 1993. The Fiber-Optic Gyroscope. Artech House, London, United Kingdom, p.5–26.
Li, X., Ge, C., Zhang, C., 2009. The influence of residuary intensity modulation of Y waveguide on the performance of IFOG. Opto-Electron. Eng., 36(11):43–47 (in Chinese).
Ma, H., Jin, Z., Ding, C., et al., 2003. Influence of spectral linewidth of laser on resonance characteristics in fiber ring resonator. Chin. J. Lasers, 30(8):731–734 (in Chinese).
Ma, H., Jin, Z., Ding, C., et al., 2004. Research on signal detection method of resonator fiber optical gyro. Chin. J. Lasers, 31(8):1001–1005 (in Chinese).
Ma, H., Lu, X., Yao, L., et al., 2012. Full investigation of the resonant frequency servo loop for resonator fiber-optic gyro. Appl. Opt., 51(21):5178–5185. [doi:10.1364/AO.51. 005178]
Malvern, A., 1992. Progress toward fiber optic gyro production. Fiber Optic Gyros: 15th Anniversary Conf. Int. Society for Optics and Photonics, p.48–64. [doi:10.1117/12.135035]
Meyer, R.E., Ezekiel, S., Stowe, D.W., et al., 1983. Passive fiber-optic ring resonator for rotation sensing. Opt. Lett., 8(12):644–646. [doi:10.1364/OL.8.000644]
Sathian, J., Jaatinen, E., 2012. Intensity dependent residual amplitude modulation in electro-optic phase modulators. Appl. Opt., 51(16):3684–3691. [doi:10.1364/AO.51.00 3684]
Savatinova, I., Tonchev, S., Todorov, R., et al., 1996. Electro-optic effect in proton exchanged LiNbO3 and LiTaO3 waveguides. J. Lightw. Technol., 14(3):403–409. [doi:10. 1109/50.485600]
Shupe, D.M., 1981. Fiber resonator gyroscope: sensitivity and thermal nonreciprocity. Appl. Opt., 20(2):286–289. [doi: 10.1364/AO.20.000286]
Wang, D., Sheng, F., 2007. Residuary intensity modulation of the phase modulator in IFOG and its measurement. Opto-Electron. Eng., 34(7):26–29 (in Chinese).
Wang, W., Zhang, G., 1995. The effect of residual intensity modulation of Ti: LiNbO3 phase modulator in closed-loop FOG. J. Chin. Inert. Technol., 3(1):55–58 (in Chinese).
Ying, D., Ma, H., Jin, Z., 2008a. Resonator fiber optic gyro using the triangle wave phase modulation technique. Opt. Commun., 281(4):580–586. [doi:10.1016/j.optcom.2007. 10.012]
Ying, D., Ma, H., Jin, Z., 2008b. Dynamic characteristics of R-FOG based on the triangle wave phase modulation technique. Opt. Commun., 281(21):5340–5343. [doi:10.1016/j.optcom.200807.042]
Ying, D., Demokan, M.S., Zhang, X., et al., 2010. Analysis of Kerr effect in resonator fiber optic gyros with triangular wave phase modulation. Appl. Opt., 49(3):529–535. [doi: 10.1364/AO.49.000529]
Zhang, G., Wang, W., 1996. The effect of polarization crosstalk of Ti: LiNbO3 phase modulator in closed-loop fiber-optic gyro. Missil. Space Veh., 221(3):20–25 (in Chinese).
Zhang, X., Ma, H., Ding, C., et al., 2005. Analysis on phase modulation spectroscopy of resonator fiber optic gyro. Chin. J. Lasers, 32(11):1529–1533 (in Chinese).
Zhang, X., Ma, H., Zhou, K., et al., 2006a. Experiments in PM-spectroscopy resonator fiber optic gyro. Chin. J. Sens. Actuat., 19(3):800–803 (in Chinese).
Zhang, X., Ma, H., Ding, C., et al., 2006b. Optical Kerr effect in phase modulation spectroscopy resonator fiber optic gyro. Chin. J. Lasers, 33(6):814–818 (in Chinese).